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Power efficient resource allocation algorithms for provisioning in SDH networks

机译:在SDH网络中进行配置的高效电源分配算法

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Synchronous Digital Hierarchy (SDH) is a widely used technology in access and core networks for carrying different types of traffic. It defines a hierarchy for multiplexing lower rate traffic containers into higher rate traffic containers. Provisioning refers to the process of allocation of resources to carry a given traffic demand. Due to the continued expansion of the networks employing SDH technology, the power consumption of the network increases becoming a bottleneck for further expansion. Allocation of resources to traffic demands in power-efficient ways will therefore help in minimizing the capital and operational costs in running the network. In this work, the power consumed by a switch matrix having the capability to switch different traffic containers in different amounts is considered. The objective is to minimize the number of network elements deployed in the network by allocating resources to traffic demands in power-efficient ways. A formulation based on Integer Linear Programming (ILP) is presented; three different heuristic approaches, based on how higher order trails are used and the use of grooming, are proposed. It is found that the grooming-based heuristic performs better in terms of the total power consumption relative to the weighted number of requests accepted. It is also found that, for small networks, the grooming heuristic performs identical to the optimal solution found by an LP solver when the problem is feasible. It can be noted that the power-efficient design is also a cost-efficient design since the capacity of the switch matrix determines the number of network elements that are required for deployment in the network.
机译:同步数字体系(SDH)是接入和核心网络中用于承载不同类型流量的一种广泛使用的技术。它定义了一个层次结构,用于将较低速率的流量容器多路复用到较高速率的流量容器中。调配是指分配资源以承载给定流量需求的过程。由于采用SDH技术的网络的持续扩展,网络的功耗增加成为进一步扩展的瓶颈。因此,以节能的方式将资源分配给流量需求将有助于最小化网络运行中的资金和运营成本。在这项工作中,考虑了具有能够以不同数量切换不同交通集装箱的能力的切换矩阵所消耗的功率。目的是通过以节能方式将资源分配给流量需求,以最大程度地减少网络中部署的网络元素的数量。提出了基于整数线性规划(ILP)的公式;根据如何使用高阶轨迹和修饰,提出了三种不同的启发式方法。发现相对于接受的请求的加权数量,基于修饰的启发式方法在总功耗方面表现更好。还发现,对于小型网络,当问题可行时,修饰启发式方法的性能与LP解算器找到的最佳解决方案相同。可以注意到,由于开关矩阵的容量决定了网络中部署所需的网络元素的数量,因此功率高效的设计也是一种成本高效的设计。

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